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Genetic Exchange in an Arbuscular Mycorrhizal Fungus Results in Increased Rice Growth and Altered Mycorrhiza-Specific Gene Transcription

机译:丛枝菌根真菌中的遗传交换导致水稻生长增加和菌根特异性基因转录改变

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摘要

Arbuscular mycorrhizal fungi (AMF) are obligate symbionts with most terrestrial plants. They improve plant nutrition, particularly phosphate acquisition, and thus are able to improve plant growth. In exchange, the fungi obtain photosynthetically fixed carbon. AMF are coenocytic, meaning that many nuclei coexist in a common cytoplasm. Genetic exchange recently has been demonstrated in the AMF Glomus intraradices, allowing nuclei of different Glomus intraradices strains to mix. Such genetic exchange was shown previously to have negative effects on plant growth and to alter fungal colonization. However, no attempt was made to detect whether genetic exchange in AMF can alter plant gene expression and if this effect was time dependent. Here, we show that genetic exchange in AMF also can be beneficial for rice growth, and that symbiosis-specific gene transcription is altered by genetic exchange. Moreover, our results show that genetic exchange can change the dynamics of the colonization of the fungus in the plant. Our results demonstrate that the simple manipulation of the genetics of AMF can have important consequences for their symbiotic effects on plants such as rice, which is considered the most important crop in the world. Exploiting natural AMF genetic variation by generating novel AMF genotypes through genetic exchange is a potentially useful tool in the development of AMF inocula that are more beneficial for crop growth.
机译:丛枝菌根真菌(AMF)是大多数陆地植物的专性共生体。它们改善植物营养,尤其是磷酸盐的获取,因此能够改善植物生长。作为交换,真菌获得光合固定碳。 AMF是共胞质的,这意味着许多核共存于共同的细胞质中。最近已经在AMF Glomus内辐射体中证明了遗传交换,从而允许不同Glomus内辐射体菌株的细胞核混合。先前已经证明这种遗传交换对植物生长具有负面影响并改变真菌定植。然而,没有尝试检测AMF中的遗传交换是否可以改变植物基因的表达以及这种作用是否是时间依赖性的。在这里,我们表明AMF中的遗传交换也可能有益于水稻生长,并且通过遗传交换可以改变共生特异性基因的转录。而且,我们的结果表明,遗传交换可以改变植物中真菌定植的动力学。我们的结果表明,对AMF遗传基因的简单操作可能会对它们对植物(如水稻)的共生作用产生重要影响,水稻被认为是世界上最重要的作物。通过遗传交换产生新的AMF基因型来利用天然AMF遗传变异是开发AMF接种物的潜在有用工具,该方法更有利于作物生长。

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